Zboray Robert, Schweitzer Wolf, Ebert Lars, Wolf Martin, Guglielmini Sabino, Haemmerle Stefan, Weiss Stephan, Koller Bruno
Center for X-ray Analytics, Empa-Swiss Federal Laboratories for Materials Science and Technology, 8600 Dübendorf, Switzerland.
Zurich Institute of Forensic Medicine, University of Zurich, 8057 Zurich, Switzerland.
J Imaging. 2024 Feb 29;10(3):60. doi: 10.3390/jimaging10030060.
The rate of parental consent for fetal and perinatal autopsy is decreasing, whereas parents are more likely to agree to virtual autopsy by non-invasive imaging methods. Fetal and perinatal virtual autopsy needs high-resolution and good soft-tissue contrast for investigation of the cause of death and underlying trauma or pathology in fetuses and stillborn infants. This is offered by micro-computed tomography (CT), as opposed to the limited resolution provided by clinical CT scanners, and this is one of the most promising tools for non-invasive perinatal postmortem imaging. We developed and optimized a micro-CT scanner with a dual-energy imaging option. It is dedicated to post-mortem CT angiography and virtual autopsy of fetuses and stillborn infants in that the chamber can be cooled down to around 5 °C; this increases tissue rigidity and slows decomposition of the native specimen. This, together with the dedicated gantry-based architecture, attempts to reduce potential motion artifacts. The developed methodology is based on prior endovascular injection of a BaSO-based contrast agent. We explain the design choices and considerations for this scanner prototype. We give details of the treatment of the optimization of the dual-energy and virtual mono-energetic imaging option that has been based on minimizing noise propagation and maximizing the contrast-to-noise ratio for vascular features. We demonstrate the scanner capabilities with proof-of-concept experiments on phantoms and stillborn piglets.
胎儿及围产期尸检获得父母同意的比例正在下降,而父母更有可能同意通过非侵入性成像方法进行虚拟尸检。胎儿及围产期虚拟尸检需要高分辨率和良好的软组织对比度,以便调查胎儿和死产婴儿的死因以及潜在的创伤或病理情况。微计算机断层扫描(CT)能够提供这样的条件,这与临床CT扫描仪提供的有限分辨率不同,并且这是用于非侵入性围产期死后成像最有前景的工具之一。我们开发并优化了一种具有双能成像选项的微CT扫描仪。它专门用于胎儿和死产婴儿的死后CT血管造影和虚拟尸检,因为扫描腔可以冷却到大约5°C;这增加了组织的硬度并减缓了天然标本的分解。这与基于机架的专用架构一起,试图减少潜在的运动伪影。所开发的方法基于事先向血管内注射硫酸钡基造影剂。我们解释了该扫描仪原型的设计选择和考虑因素。我们详细介绍了基于最小化噪声传播和最大化血管特征的对比度噪声比的双能和虚拟单能成像选项的优化处理。我们通过对模型和死产仔猪的概念验证实验展示了该扫描仪的能力。